Comparison Pioneer VSX-835D vs Pioneer VSX-835
Add to comparison | ||
|---|---|---|
| Pioneer VSX-835D | Pioneer VSX-835 | |
| Outdated Product | from $499.00 | |
| TOP sellers | ||
| Device type | AV Receiver | AV Receiver |
CPU | ||
| DAC frequency | 384 kHz | 384 kHz |
| Audio DAC | 32 bit | 32 bit |
| Auto sound calibration | ||
| eARC | ||
| Ultra HD | 8K | 8K |
| Upscaling | Ultra HD (8K) | Ultra HD (8K) |
| HDR | HDR10 Plus, Dolby Vision | HDR10, Dolby Vision |
| 3D | ||
| Multi Zone | ||
Tech specs | ||
| Number of channels | 7.2 | 7.2 |
| Power per channel | 80 W | 80 W |
| Acceptable acoustic impedance | 4 Ohm | 4 Ohm |
| Frequency range | 20 — 20000 Hz | 20 — 20000 Hz |
| Bi/Tri-amping | ||
Media player and tuner | ||
| Tuner and playback | AM/FM radio USB drive | AM/FM radio USB drive |
Communications (interface) | ||
| Interfaces | Bluetooth | Bluetooth |
Decoder support | ||
| Decoders | Dolby Atmos Dolby Digital Dolby Digital Plus Dolby TrueHD DTS DTS Express DTS 96/24 DTS-HD High Resolution Audio DTS-HD Master Audio DTS ES Matrix 6.1 DTS ES Discrete 6.1 DTS Neural:X DTS X IMAX Enhanced | Dolby Atmos Dolby Digital Dolby Digital Plus Dolby TrueHD DTS DTS Express DTS 96/24 DTS-HD High Resolution Audio DTS-HD Master Audio DTS ES Matrix 6.1 DTS ES Discrete 6.1 DTS Neural:X DTS X IMAX Enhanced |
Inputs | ||
| RCA | 3 pairs | 3 pairs |
| Coaxial S/PDIF | 1 pcs | 1 pcs |
| Optical | 1 шт | 1 шт |
| HDMI | 4 шт | 4 шт |
| HDMI version | v 2.1 | v 2.1 |
Outputs | ||
| RCA | 1 pairs | 1 pairs |
| HDMI | 1 шт | 1 шт |
| On headphones | 6.35 mm (Jack) | 6.35 mm (Jack) |
| More features | to the subwoofer | to the subwoofer |
Front panel | ||
| Headphone output | ||
General | ||
| Power consumption | 490 W | 490 W |
| Standby consumption | 0.2 W | 0.2 W |
| Dimensions (WxDxH) | 435x321x148 mm | 435x321x148 mm |
| Weight | 8.4 kg | 8.4 kg |
| Color | ||
| Added to E-Catalog | august 2024 | january 2024 |
Compare Pioneer VSX-835D and VSX-835
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Glossary
HDR
Receiver support for HDR technology; this clause may also specify the specific supported HDR format.
HDR stands for High Dynamic Range. This technology allows you to expand the range of brightness reproduced simultaneously on the screen; to put it simply, the viewer will see brighter whites and darker blacks. In practice, this means a significant improvement in color quality: colors are more vibrant and at the same time more faithful than without HDR. However, to use this function, in addition to the receiver, a TV/projector that supports the appropriate HDR format and content recorded in this format is required.
In terms of specific formats, the most popular options these days are basic HDR10, advanced HDR10+, and high-end Dolby Vision. Here are their features:
- HDR10. Historically the first of the consumer HDR formats, less advanced than the options described below but extremely widespread. In particular, HDR10 is supported by almost all streaming services that provide HDR content at all, and it is also common for Blu-ray discs. Allows you to work with a color depth of 10 bits (hence the name). At the same time, devices of this format are also compatible with content in HDR10 +, although its quality will be limited by the capabilities of the original HDR10.
- HDR10+. Improved version of HDR10. With the same color depth (10 bits), it uses the so-called dynamic metadata,...which allows transmitting information about the color depth not only for groups of several frames, but also for individual frames. This results in an additional improvement in color reproduction.
Dolby Vision. An advanced standard used particularly in professional cinematography. Allows you to achieve a color depth of 12 bits, uses the dynamic metadata described above, and also makes it possible to transmit two image options at once in one video stream - HDR and normal (SDR). At the same time, Dolby Vision is based on the same technology as HDR10, so in modern video technology this format is usually combined with HDR10 or HDR10+.
HDR stands for High Dynamic Range. This technology allows you to expand the range of brightness reproduced simultaneously on the screen; to put it simply, the viewer will see brighter whites and darker blacks. In practice, this means a significant improvement in color quality: colors are more vibrant and at the same time more faithful than without HDR. However, to use this function, in addition to the receiver, a TV/projector that supports the appropriate HDR format and content recorded in this format is required.
In terms of specific formats, the most popular options these days are basic HDR10, advanced HDR10+, and high-end Dolby Vision. Here are their features:
- HDR10. Historically the first of the consumer HDR formats, less advanced than the options described below but extremely widespread. In particular, HDR10 is supported by almost all streaming services that provide HDR content at all, and it is also common for Blu-ray discs. Allows you to work with a color depth of 10 bits (hence the name). At the same time, devices of this format are also compatible with content in HDR10 +, although its quality will be limited by the capabilities of the original HDR10.
- HDR10+. Improved version of HDR10. With the same color depth (10 bits), it uses the so-called dynamic metadata,...which allows transmitting information about the color depth not only for groups of several frames, but also for individual frames. This results in an additional improvement in color reproduction.
Dolby Vision. An advanced standard used particularly in professional cinematography. Allows you to achieve a color depth of 12 bits, uses the dynamic metadata described above, and also makes it possible to transmit two image options at once in one video stream - HDR and normal (SDR). At the same time, Dolby Vision is based on the same technology as HDR10, so in modern video technology this format is usually combined with HDR10 or HDR10+.











